Liu Fang, Wang Pandi, Xiong Xiaojuan, Zeng Xinhua, Zhang Xiaobo, Wu Gang
Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture and Rural Affairs, Oil Crops Research Institute, Chinese Academy of Agricultural Sciences, Wuhan, China.
Life Science and Technology Center, China National Seed Group Co. Ltd., Wuhan, China.
Front Plant Sci. 2021 Mar 5;12:626625. doi: 10.3389/fpls.2021.626625. eCollection 2021.
Nervonic acid (NA) is a very-long-chain monounsaturated fatty acid that plays crucial roles in brain development and has attracted widespread research interest. The markets encouraged the development of a refined, NA-enriched plant oil as feedstocks for the needed further studies of NA biological functions to the end commercial application. Plant seed oils offer a renewable and environmentally friendly source of NA, but their industrial production is presently hindered by various factors. This review focuses on the NA biosynthesis and assembly, NA resources from plants, and the genetic engineering of NA biosynthesis in oil crops, discusses the factors that affect NA production in genetically engineered oil crops, and provides prospects for the application of NA and prospective trends in the engineering of NA. This review emphasizes the progress made toward various NA-related topics and explores the limitations and trends, thereby providing integrated and comprehensive insight into the nature of NA production mechanisms during genetic engineering. Furthermore, this report supports further work involving the manipulation of NA production through transgenic technologies and molecular breeding for the enhancement of crop nutritional quality or creation of plant biochemical factories to produce NA for use in nutraceutical, pharmaceutical, and chemical industries.
神经酸(NA)是一种超长链单不饱和脂肪酸,在大脑发育中起着关键作用,已引起广泛的研究兴趣。市场推动了一种精制的、富含NA的植物油的开发,作为原料用于NA生物学功能的进一步研究直至最终商业应用。植物种子油提供了一种可再生且环保的NA来源,但其工业化生产目前受到各种因素的阻碍。本综述聚焦于NA的生物合成与组装、植物中的NA资源以及油料作物中NA生物合成的基因工程,讨论了影响转基因油料作物中NA生产的因素,并展望了NA的应用前景和NA工程的未来趋势。本综述强调了在各种与NA相关主题上取得的进展,探讨了局限性和趋势,从而对基因工程过程中NA生产机制的本质提供了全面而综合的见解。此外,本报告支持通过转基因技术和分子育种来操纵NA生产的进一步工作,以提高作物营养品质或创建植物生化工厂来生产用于营养保健品、制药和化工行业的NA。